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Porcine Skin Damage Thresholds for Pulsed Nanosecond-Scale Laser Exposure at 1064-nm

机译:脉冲皮肤损伤脉冲纳秒尺度激光曝光阈值1064纳米

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1 ABSTRACT Pulsed high-energy lasers operating in the near-infrared (NIR) band are increasingly being used in medical, industrial, and military applications, but there are little available experimental data to characterize their hazardous effects on skin tissue. The current American National Standard for the Safe Use of Lasers (ANSI Z136.1-2014) defines the maximum permissible exposure (MPE) on the skin as either a single-pulse or total exposure time limit. This study determined the minimum visible lesion (MVL) damage thresholds in Yucatan miniature pig skin for the single-pulse case and several multiple-pulse cases over a wide range of pulse repetition frequencies (PRFs) (10, 125, 2,000, and 10,000 Hz) utilizing nanosecond-scale pulses (10 or 60 ns). The thresholds are expressed in terms of the median effective dose (ED_(50)) based on varying individual pulse energy with other laser parameters held constant. The results confirm a decrease in MVL threshold as PRF increases for exposures with a constant number of pulses, while also noting a PRF-dependent change in the threshold as a function of the number of pulses. Furthermore, this study highlights a change in damage mechanism to the skin from melanin-mediated photomechanical events at high irradiance levels and few numbers of pulses to bulk tissue photothermal additivity at lower irradiance levels and greater numbers of pulses. The observed trends exceeded the existing exposure limits by an average factor of 9.1 in the photothermally-damaged cases and 3.6 in the photomechanically-damaged cases.
机译:1摘要脉冲高能激光器在近红外线(NIR)乐队中越来越多地用于医疗,工业和军事应用,但是有很少的可用实验数据来表征它们对皮肤组织的危险作用。当前美国国家安全使用激光器的国家标准(ANSI Z136.1-2014)将皮肤的最大允许曝光(MPE)定义为单脉冲或全曝光时间限制。该研究确定了用于单脉冲壳体的尤卡坦微型猪皮肤的最小可见病变(MVL)损伤阈值,以及在宽范围的脉冲重复频率(PRF)(10,125,2,000和10,000Hz上的几种多脉冲箱)利用纳秒鳞脉冲(10或60ns)。基于与其他激光参数保持恒定的其他激光参数,以基于不同的单独脉冲能量的中值有效剂量(ED_(50))表示阈值。结果证实了MVL阈值的降低,因为PRF增加了具有恒定数量的脉冲的曝光,同时还注意到阈值中的PRF相关的变化作为脉冲的数量。此外,该研究突出了在高辐照度水平下从黑色素介导的光电机械事件的损伤机制的变化,少量脉冲在较低的辐照度水平和较大数量的脉冲下散装组织光热添加剂。观察到的趋势超过了现有的暴露限值,在光热损坏的情况下平均9.1系列和3.6在光学力学损坏的情况下。

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